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人类 Kir2.1 钾通道:低温电子显微镜数据处理和分子动力学模拟的方案。

Human Kir2.1 Potassium Channel: Protocols for Cryo-EM Data Processing and Molecular Dynamics Simulations.

机构信息

UMR 7590, CNRS, Muséum National d'Histoire Naturelle, IRD, Institut de Minéralogie, Physique des Matériaux et de Cosmochimie, IMPMC, Sorbonne Université, Paris, France.

出版信息

Methods Mol Biol. 2024;2796:157-184. doi: 10.1007/978-1-0716-3818-7_10.

Abstract

Kir channels are potassium (K) channels responsible for the mechanism of inward rectification, which plays a fundamental role in maintaining the resting membrane potential. There are seven Kir subfamilies, and their opening and closing mechanism is regulated by different regulatory factors. Genetically inherited defects in Kir channels are responsible for several rare human diseases, and for most of them, there are currently no effective therapeutic treatments. High-resolution structural information is not available for several members within the Kir subfamilies. Recently, our group achieved a significant breakthrough by utilizing cryo-EM single-particle analysis to elucidate the first structure of the human Kir2.1 channel. We present here the data processing protocol of the cryo-EM data of the human Kir2.1 channel, which is applicable to the structural determination of other ion channels by cryo-EM single-particle analysis. We also introduce a protocol designed to assess the structural heterogeneity within the cryo-EM data, allowing for the identification of other possible protein structure conformations present in the collected data. Moreover, we present a protocol for conducting all-atom molecular dynamics (MD) simulations for K channels, which can be incorporated into various membrane models to simulate different environments. We also propose some methods for analyzing the MD simulations, with a particular emphasis on assessing the local mobility of protein residues.

摘要

Kir 通道是负责内向整流机制的钾 (K) 通道,在维持静息膜电位方面发挥着基本作用。有七种 Kir 亚家族,其开放和关闭机制由不同的调节因子调节。Kir 通道的遗传性缺陷导致了几种罕见的人类疾病,对于大多数疾病,目前尚无有效的治疗方法。几种 Kir 亚家族成员的高分辨率结构信息尚不可用。最近,我们小组利用冷冻电镜单颗粒分析取得了重大突破,阐明了人类 Kir2.1 通道的第一个结构。我们在此介绍了人类 Kir2.1 通道冷冻电镜数据的处理方案,该方案适用于通过冷冻电镜单颗粒分析对其他离子通道进行结构测定。我们还介绍了一种评估冷冻电镜数据中结构异质性的方案,该方案可用于识别收集数据中存在的其他可能的蛋白质结构构象。此外,我们提出了一种用于进行全原子分子动力学 (MD) 模拟的方案,该方案可用于各种膜模型以模拟不同的环境。我们还提出了一些用于分析 MD 模拟的方法,特别强调评估蛋白质残基的局部流动性。

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